Backplane Connectors - Hard Metric, Standard

Image Part Number Description / PDF Quantity Rfq
HM2P07PDR1U0N9LF

HM2P07PDR1U0N9LF

Storage & Server IO (Amphenol ICC)

CONN HARD METRIC

0

HM2P07PNW1G5GFLF

HM2P07PNW1G5GFLF

Storage & Server IO (Amphenol ICC)

CONN HEADER 132POS 2MM PRESS-FIT

0

278071110010840+

278071110010840+

KYOCERA Corporation

CONN RECEPT

0

5120824-1

5120824-1

TE Connectivity AMP Connectors

CONN HEADER 72POS 2MM PRESS-FIT

0

HM2P87PDF1M0N9LF

HM2P87PDF1M0N9LF

Storage & Server IO (Amphenol ICC)

CONN HEADER 176POS 2MM PRESS-FIT

0

HM2E32PH5000LF

HM2E32PH5000LF

Storage & Server IO (Amphenol ICC)

CONN RECEPT 3POS PRESS-FIT

0

178071077512833D+

178071077512833D+

KYOCERA Corporation

BOARD TO BOARD

0

HM2P65PDA1L1N9LF

HM2P65PDA1L1N9LF

Storage & Server IO (Amphenol ICC)

CONN HEADER 169POS 2MM PRESS-FIT

0

17011544205

17011544205

HARTING

CONN HEADER 154POS 2MM PRESS-FIT

0

HM2R03PA510JN9LF

HM2R03PA510JN9LF

Storage & Server IO (Amphenol ICC)

MPAC 5R ST PF HDR

0

178071077813515P+

178071077813515P+

KYOCERA Corporation

BOARD TO BOARD

0

6392174-1

6392174-1

TE Connectivity AMP Connectors

CONN HEADER 77POS 2MM PRESS-FIT

0

278071055012833D+

278071055012833D+

KYOCERA Corporation

CONN RECEPT

0

HM2P07PKP248GFLF

HM2P07PKP248GFLF

Storage & Server IO (Amphenol ICC)

CONN HEADER 154POS 2MM PRESS-FIT

0

17151692209

17151692209

HARTING

CONN HEADER 2MM

0

HM2P11PDM3R1N9LF

HM2P11PDM3R1N9LF

Storage & Server IO (Amphenol ICC)

CONN HEADER 80POS 2MM PRESS-FIT

0

HM2R95PE8101N9LF

HM2R95PE8101N9LF

Storage & Server IO (Amphenol ICC)

MPACS RA REC

0

HM2P07PDE120AALF

HM2P07PDE120AALF

Storage & Server IO (Amphenol ICC)

CONN HEADER 110POS TYPE A VERT

0

17021252221

17021252221

HARTING

CONN HEADER 2MM PRESS-FIT

0

HM2S10PE51N0N9LF

HM2S10PE51N0N9LF

Storage & Server IO (Amphenol ICC)

CONN RECEPT

0

Backplane Connectors - Hard Metric, Standard

1. Overview

Hard Metric Standard Backplane Connectors are precision-engineered electrical components designed for high-density interconnection in complex systems. Defined by their standardized 2.54mm (0.1") grid spacing, these connectors ensure mechanical and electrical compatibility across generations of equipment. Their importance in modern technology stems from enabling scalable, high-reliability architectures in telecommunications, industrial automation, and mission-critical computing systems.

2. Main Types & Functional Classification

TypeKey FeaturesApplications
2.54mm Hard MetricStandardized pitch, 1-6 rows, up to 60A per contactTelecom switches, industrial controllers
2.00mm Hard MetricReduced pitch, enhanced vibration resistanceHigh-density servers, medical imaging
1.27mm Hard MetricUltra-high density, low insertion forceCompact test equipment, aerospace systems

3. Structure & Composition

Typical construction includes: - Insulating housing (LCP/nylon with high thermal stability) - Contact array (phosphor bronze with gold/silver plating) - Polarization keying for mating assurance - EMI shielding via integrated metal frames - Actuation mechanism (lever-assisted or push-pull variants)

4. Key Technical Specifications

ParameterTypical ValueImportance
Current Rating1-60A per contactDetermines power delivery capacity
Contact Resistance 5m Impacts signal integrity
Dielectric Strength1000VACSafety and insulation reliability
Mating Cycles200-2000 cyclesSystem longevity indicator
Operating Temp-55 C to +125 CEnvironmental robustness

5. Application Fields

  • Telecommunications: 5G base stations, optical transport systems
  • Industrial: PLC backplanes, test & measurement equipment
  • Medical: MRI scanners, diagnostic imaging systems
  • Transportation: Rail signaling systems, avionics

6. Leading Manufacturers & Products

ManufacturerProduct SeriesKey Features
TE ConnectivityHERMHARD HM2.54mm, 3-row, 3000V isolation
AmphenolHarshIO HMIP67-rated, extreme vibration resistance
MolexMX Hard MetricHigh-speed differential pairs, 25Gbps

7. Selection Guidelines

Key considerations include: - Electrical requirements (current/voltage per contact) - Mechanical constraints (board spacing, mating force) - Environmental conditions (temperature, vibration) - Future scalability (modular design compatibility) - Cost optimization (total lifecycle vs upfront cost)

8. Industry Trends

Emerging developments include: - Integration with optical backplane technology - Increased adoption of 1.27mm pitch for compact systems - Enhanced thermal management solutions - RoHS-compliant plating materials (replacing cadmium) - Smart connectors with integrated diagnostics

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